深紫外レーザー用高性能フルオロボレート結晶を開発(Researchers Develop High-Performance Fluoroborate Crystals for Deep-ultraviolet Lasers)

2026-01-21 中国科学院(CAS)

深紫外(DUV)全固体レーザーの実用化には、高性能な非線形光学(NLO)結晶が不可欠であるが、広いバンドギャップ・大きな二次高調波発生(SHG)・適度な複屈折性を同時に満たす材料設計は困難であった。中国科学院新疆理化技術研究所の研究チームは、フッ素配位多面体と平面B–O構造の協調的集合に基づく新たな結晶設計戦略を提案し、KABF、RABF、CABFからなる一連のアルカリ金属フルオロボレート結晶を創製した。フッ素化多面体の「せん断効果」により、π共役BOユニットが規則配向し、鎖状に重合した1∞[BO₂]構造と非中心対称結晶の形成を実現。得られた結晶はKDP比1.6~1.7倍のSHG応答を示し、最短位相整合波長は約161 nmに到達した。本研究は、毒性の高いベリリウムを用いない次世代DUVレーザー材料設計の新指針を示すものであり、成果はAdvanced Functional Materials誌に掲載された。

深紫外レーザー用高性能フルオロボレート結晶を開発(Researchers Develop High-Performance Fluoroborate Crystals for Deep-ultraviolet Lasers)

Fig. (a) Representative structures of the synergistic combination of fluorinated polyhedra and π-conjugated B–O groups; (b) DUV NLO crystals designed and synthesized in this work. (Image by XTIPC)

<関連情報>

フッ素化多面体と重合BO3ユニットの相乗的組み合わせによる深紫外非線形光学結晶の構築 Constructing Deep-Ultraviolet Nonlinear Optical Crystals via Synergistic Combination of Fluorinated Polyhedra and Polymerized BO3 Units

Hongkang Su, Chenxu Li, Jiahao Jiao, Zhihua Yang, Shilie Pan
Advances Functional Materials  Published: 10 January 2026
DOI:https://doi.org/10.1002/adfm.202531049

ABSTRACT

The development of modern science urgently needs the vital tool of deep-ultraviolet (DUV, λ < 200nm) all-solid-state lasers, while the exploration of DUV nonlinear optical (NLO) crystals is limited by their strict application conditions. Herein, we propose a structural design strategy for developing novel DUV NLO optical crystals through synergistic assembly of fluorinated polyhedral and planar B─O groups with balanced optical properties, namely, large second-harmonic generation (SHG) response, appropriate birefringence, and wide band gap. The key to achieve consistent alignment of π-conjugated functional groups lies in leveraging the “shearing” effect and directional polymerization capability of fluorinated polyhedra. Furthermore, based on this strategy, a series of alkali-metal fluorooxoborates Mx(NH4)2-xB8O12F2 (M = K, Rb; 0 < x < 2; KABF, RABF) and CsNH4B8O12F2 (CABF) were successfully designed and synthesized. Driven by uniformly arranged [BO3F]4− and chain-like aggregated [BO3]3− functional groups, these compounds achieve a well-balanced optimization of strong SHG response (1.6–1.7 × KDP, 1064–532 nm; 0.4–0.5 × BBO, 532–266 nm, respectively) and the shortest type-I phase-matching wavelength (161.5–168.6 nm). The inspiring results highlight their potential as candidates for DUV NLO crystals and provide support for the structure construction strategy using a synergistic combination of fluorinated polyhedra and polymerized BO3 units.

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